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首页> 外文期刊>Journal of Biotechnology >Exhaustive computational identification of pathogen sequences far-distant from background genomes: Identification and experimental verification of human-blind dengue PCR primers
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Exhaustive computational identification of pathogen sequences far-distant from background genomes: Identification and experimental verification of human-blind dengue PCR primers

机译:与背景基因组相距较远的病原体序列的详尽计算鉴定:人盲登革热PCR引物的鉴定和实验验证

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We recently developed novel algorithms for exhaustive identification of all nucleotide subsequences present in a pathogen genome which differ by at least a chosen number of mismatches from the sequences of host/background organisms. This type of exhaustive computational analysis will be useful in reducing false positives and cross-reactivity in PCR and hybridization assays. We present the first experimental test of the method by showing that the subsequences identified when used as 18-mer PCR primers can detect the presence of dengue virus (DENV) even in the presence of a large excess of complex human genomic DNA. From our computations, 715 serotype-specific primer pairs were identified for three different DENV serotypes in which each primer sequence lies at least two mismatches from the nearest human sequence. DNA clones of representative strains of DENV-1, DENV-2, and DENV-4 viruses were subjected to real-time PCR testing using eight primer pairs each. Efficiencies were uniformly very high (mean+/-S.D.=99.6+/-3%), and amplification of human DNA was never observed within 35 cycles, even at a 5.5-fold molar excess of human DNA. Exhaustive primer/probe screening can potentially produce more selective and sensitive diagnostic assays for pathogens, especially in the presence of complex backgrounds.
机译:我们最近开发了新颖的算法,用于详尽鉴定病原体基因组中存在的所有核苷酸亚序列,这些序列与宿主/背景生物的序列至少相差一定数量的错配。这种详尽的计算分析将有助于减少PCR和杂交测定中的假阳性和交叉反应。我们通过显示当用作18-mer PCR引物时鉴定的子序列可以检测登革热病毒(DENV)的存在,即使存在大量过量的复杂人类基因组DNA时,也显示了该方法的首次实验测试。从我们的计算中,为三种不同的DENV血清型鉴定了715种血清型特异性引物对,其中每个引物序列与最接近的人类序列至少存在两个错配。分别使用八对引物对DENV-1,DENV-2和DENV-4病毒代表株的DNA克隆进行实时PCR测试。效率始终很高(平均值+/-标准差= 99.6 +/- 3%),即使在人类DNA摩尔量超过5.5倍的情况下,在35个循环内也从未观察到人类DNA的扩增。详尽的引物/探针筛选可能会针对病原体产生更具选择性和敏感性的诊断分析,尤其是在复杂背景下。

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